default search action
Rohan Banerjee
Person information
Refine list
refinements active!
zoomed in on ?? of ?? records
view refined list in
export refined list as
2020 – today
- 2024
- [i5]Rohan Banerjee, Rajat Kumar Jenamani, Sidharth Vasudev, Amal Nanavati, Sarah Dean, Tapomayukh Bhattacharjee:
To Ask or Not To Ask: Human-in-the-loop Contextual Bandits with Applications in Robot-Assisted Feeding. CoRR abs/2405.06908 (2024) - 2023
- [c40]Abhimanyu Rajeshkumar Bambhaniya, Yangyu Chen, Anshuman, Rohan Banerjee, Tushar Krishna:
Proteus : HLS-based NoC Generator and Simulator. DATE 2023: 1-6 - [c39]Rohan Banerjee, Oishee Mazumder, Ayan Mukherjee, Soumitra Sinhahajari, Aniruddha Sinha:
Reconstruction of Body Surface Potential From 12-Lead ECG: A Conditional GAN Based Approach. EUSIPCO 2023: 1180-1184 - [i4]Ayan Mukherjee, Rohan Banerjee, Avik Ghose:
A Novel U-Net Architecture for Denoising of Real-world Noise Corrupted Phonocardiogram Signal. CoRR abs/2310.00216 (2023) - [i3]Rohan Banerjee, Prishita Ray, Mark Campbell:
Improving Environment Robustness of Deep Reinforcement Learning Approaches for Autonomous Racing Using Bayesian Optimization-based Curriculum Learning. CoRR abs/2312.10557 (2023) - 2022
- [j4]Oishee Mazumder, Rohan Banerjee, Dibyendu Roy, Sakyajit Bhattacharya, Avik Ghose, Aniruddha Sinha:
Synthetic PPG Signal Generation to Improve Coronary Artery Disease Classification: Study With Physical Model of Cardiovascular System. IEEE J. Biomed. Health Informatics 26(5): 2136-2146 (2022) - [c38]Rohan Banerjee, Ayan Mukherjee, Avik Ghose:
Noise Cleaning of ECG on Edge Device Using Convolutional Sparse Contractive Autoencoder. PerCom Workshops 2022: 491-496 - [c37]Rohan Banerjee, Avik Ghose:
A Light-Weight Deep Residual Network for Classification of Abnormal Heart Rhythms on Tiny Devices. PKDD/ECML Workshops (2) 2022: 317-331 - [c36]Rohan Banerjee, Avik Ghose:
A Light Weight Cardiac Monitoring System for On-device ECG Analysis. ECML/PKDD (6) 2022: 649-653 - 2021
- [c35]Rohan Banerjee, Avik Ghose:
Synthesis of Realistic ECG Waveforms Using a Composite Generative Adversarial Network for Classification of Atrial Fibrillation. EUSIPCO 2021: 1145-1149 - 2020
- [j3]Teddy Ort, Krishna Murthy, Rohan Banerjee, Sai Krishna Gottipati, Dhaivat Bhatt, Igor Gilitschenski, Liam Paull, Daniela Rus:
MapLite: Autonomous Intersection Navigation Without a Detailed Prior Map. IEEE Robotics Autom. Lett. 5(2): 556-563 (2020) - [j2]Alexander Amini, Igor Gilitschenski, Jacob Phillips, Julia Moseyko, Rohan Banerjee, Sertac Karaman, Daniela Rus:
Learning Robust Control Policies for End-to-End Autonomous Driving From Data-Driven Simulation. IEEE Robotics Autom. Lett. 5(2): 1143-1150 (2020) - [c34]Rohan Banerjee, Avik Ghose:
A Semi-Supervised Approach For Identifying Abnormal Heart Sounds Using Variational Autoencoder. ICASSP 2020: 1249-1253 - [c33]Rohan Banerjee, Avik Ghose, Kayapanda M. Mandana:
A Hybrid CNN-LSTM Architecture for Detection of Coronary Artery Disease from ECG. IJCNN 2020: 1-8
2010 – 2019
- 2019
- [c32]Rohan Banerjee, Sailaja Rajanala, Manish Singh:
Evaluating the Choice of Tags in CQA Sites. DASFAA (1) 2019: 625-640 - [c31]Rohan Banerjee, Avik Ghose, Sundeep Khandelwal:
A Novel Recurrent Neural Network Architecture for Classification of Atrial Fibrillation Using Single-lead ECG. EUSIPCO 2019: 1-5 - [c30]Rohan Banerjee, Avik Ghose, Aniruddha Sinha, Arpan Pal, K. M. Mandana:
A multi-modal approach for non-invasive detection of coronary artery disease. UbiComp/ISWC Adjunct 2019: 543-550 - 2018
- [c29]Rohan Banerjee, Sakyajit Bhattacharya, Soma Bandyopadhyay, Arpan Pal, K. M. Mandana:
Non-Invasive Detection of Coronary Artery Disease Based on Clinical Information and Cardiovascular Signals: A Two-Stage Classification Approach. CBMS 2018: 205-210 - [c28]Tanuka Bhattacharjee, Deepan Das, Shahnawaz Alam, M. V. Achuth Rao, Prasanta Kumar Ghosh, Ayush Ranjan Lohani, Rohan Banerjee, Anirban Dutta Choudhury, Arpan Pal:
SleepTight: Identifying Sleep Arousals Using Inter and Intra-Relation of Multimodal Signals. CinC 2018: 1-4 - [c27]Rohan Banerjee, Sakyajit Bhattacharya, Shahnawaz Alam:
Time Series and Morphological Feature Extraction for Classifying Coronary Artery Disease from Photoplethysmogram. ICASSP 2018: 950-954 - [i2]Shahnawaz Alam, Rohan Banerjee, Soma Bandyopadhyay:
Murmur Detection Using Parallel Recurrent & Convolutional Neural Networks. CoRR abs/1808.04411 (2018) - 2017
- [c26]Shreyasi Datta, Chetanya Puri, Ayan Mukherjee, Rohan Banerjee, Anirban Dutta Choudhury, Rituraj Singh, Arijit Ukil, Soma Bandyopadhyay, Arpan Pal, Sundeep Khandelwal:
Identifying Normal, AF and other Abnormal ECG Rhythms using a Cascaded Binary Classifier. CinC 2017 - [c25]Deepan Das, Rohan Banerjee, Anirban Dutta Choudhury, Sakyajit Bhattacharya, Parijat Deshpande, Arpan Pal, Kayapanda M. Mandana:
Novel features from autocorrelation and spectrum to classify Phonocardiogram quality. EMBC 2017: 4516-4520 - [c24]Rohan Banerjee, Anirban Dutta Choudhury, Parijat Deshpande, Sakyajit Bhattacharya, Arpan Pal, K. M. Mandana:
A robust dataset-agnostic heart disease classifier from Phonocardiogram. EMBC 2017: 4582-4585 - [c23]Deepan Das, Rohan Banerjee, Anirban Dutta Choudhury, Parijat Deshpande, Nital Shah, Vijay Date, Arpan Pal, Kayapanda M. Mandana:
Noise detection in smartphone phonocardiogram. ICASSP 2017: 6584-6585 - [c22]Anirban Dutta Choudhury, Rohan Banerjee, Arpan Pal, K. M. Mandana:
A fusion approach for non-invasive detection of coronary artery disease. PervasiveHealth 2017: 217-220 - [c21]Shreyasi Datta, Anirban Dutta Choudhury, Arijit Chowdhury, Tanushree Banerjee, Rohan Banerjee, Sakyajit Bhattacharya, Arpan Pal, Kayapanda M. Mandana:
Novel Statistical Post Processing to Improve Blood Pressure Estimation from Smartphone Photoplethysmogram. HumanSys@SenSys 2017: 31-36 - 2016
- [c20]Arijit Sinharay, Deb Ghosh, Parijat Deshpande, Shahnawaz Alam, Rohan Banerjee, Arpan Pal:
Smartphone Based Digital Stethoscope for Connected Health - A Direct Acoustic Coupling Technique. CHASE 2016: 193-198 - [c19]Rohan Banerjee, Swagata Biswas, Snehasis Banerjee, Anirban Dutta Choudhury, Tanushyam Chattopadhyay, Arpan Pal, Kayapanda M. Mandana, Parijat Deshpande:
Time-Frequency Analysis of Phonocardiogram for Classifying Heart Disease. CinC 2016 - [c18]Rohan Banerjee, Anirban Dutta Choudhury, Shreyasi Datta, Arpan Pal, Kayapanda M. Mandana:
Non Invasive Detection of Coronary Artery Disease Using PCG and PPG. eHealth 360° 2016: 241-252 - [c17]Rohan Banerjee, Ramu Vempada, K. M. Mandana, Anirban Dutta Choudhury, Arpan Pal:
Identifying coronary artery disease from photoplethysmogram. UbiComp Adjunct 2016: 1084-1088 - [c16]Shreyasi Datta, Rohan Banerjee, Anirban Dutta Choudhury, Aniruddha Sinha, Arpan Pal:
Blood pressure estimation from photoplethysmogram using latent parameters. ICC 2016: 1-7 - [i1]Snehasis Banerjee, Tanushyam Chattopadhyay, Swagata Biswas, Rohan Banerjee, Anirban Dutta Choudhury, Arpan Pal, Utpal Garain:
Towards Wide Learning: Experiments in Healthcare. CoRR abs/1612.05730 (2016) - 2015
- [c15]Aditi Misra, Rohan Banerjee, Anirban Dutta Choudhury, Aniruddha Sinha, Arpan Pal:
Novel peak detection to estimate HRV using smartphone audio. BSN 2015: 1-6 - [c14]Rohan Banerjee, Avik Ghose, Anirban Dutta Choudhury, Aniruddha Sinha, Arpan Pal:
Noise cleaning and Gaussian modeling of smart phone photoplethysmogram to improve blood pressure estimation. ICASSP 2015: 967-971 - [c13]Arijit Sinharay, Arpan Pal, Snehasis Banerjee, Rohan Banerjee, Soma Bandyopadhyay, Parijat Deshpande, Ranjan Dasgupta:
A Novel Approach to Unify Robotics, Sensors, and Cloud Computing Through IoT for a Smarter Healthcare Solution for Routine Checks and Fighting Epidemics. IoT 360 (1) 2015: 536-542 - [c12]Nasimuddin Ahmed, Rohan Banerjee, Avik Ghose, Arijit Sinharay:
Feasibility Analysis for Estimation of Blood Pressure and Heart Rate using A Smart Eye Wear. WearSys@MobiSys 2015: 9-14 - 2014
- [c11]Anirban Dutta Choudhury, Rohan Banerjee, Aniruddha Sinha, Shaswati Kundu:
Estimating blood pressure using Windkessel model on photoplethysmogram. EMBC 2014: 4567-4570 - [c10]Aishwarya Visvanathan, Rohan Banerjee, Aditi Misra, Anirban Dutta Choudhury, Arpan Pal:
Effects of fingertip orientation and flash location in smartphone Photoplethysmography. ICACCI 2014: 468-471 - [c9]Rohan Banerjee, Aniruddha Sinha, Anirban Dutta Choudhury, Aishwarya Visvanathan:
PhotoECG: Photoplethysmographyto estimate ECG parameters. ICASSP 2014: 4404-4408 - [c8]Anirban Dutta Choudhury, Aditi Misra, Arpan Pal, Rohan Banerjee, Avik Ghose, Aishwarya Visvanathan:
HeartSense: Estimating Heart Rate from Smartphone Photoplethysmogram Using Adaptive Filter and Interpolation. IoT360 (1) 2014: 203-209 - [c7]Aishwarya Visvanathan, Rohan Banerjee, Anirban Dutta Choudhury, Aniruddha Sinha, Shaswati Kundu:
Smart phone based blood pressure indicator. MobileHealth@MobiHoc 2014: 19-24 - [c6]Rohan Banerjee, Anirban Dutta Choudhury, Aniruddha Sinha, Aishwarya Visvanathan:
HeartSense: smart phones to estimate blood pressure from photoplethysmography. SenSys 2014: 322-323 - 2013
- [j1]Archis R. Bhandarkar, Rohan Banerjee, Padmanabhan Seshaiyer:
On the Stability of Lung Parenchymal Lesions with Applications to Early Pneumothorax Diagnosis. Comput. Math. Methods Medicine 2013: 679308:1-679308:12 (2013) - [c5]Rohan Banerjee, Aniruddha Sinha, Arpan Pal, Anurag Kumar:
Estimation of ECG parameters using photoplethysmography. BIBE 2013: 1-5 - [c4]Rohan Banerjee, Aniruddha Sinha, Kingshuk Chakravarty:
Gait based people identification system using multiple switching kinects. ISDA 2013: 182-187 - [c3]Rohan Banerjee, Aniruddha Sinha:
TrigSense: Accelerometer triggered audio sensing for traffic condition monitoring. ISSNIP 2013: 135-140 - [c2]Rohan Banerjee, Aniruddha Sinha, Arindam Saha:
Participatory sensing based traffic condition monitoring using horn detection. SAC 2013: 567-569 - [c1]Anirban Dutta Choudhury, Aishwarya Visvanathan, Rohan Banerjee, Aniruddha Sinha, Arpan Pal, Chirabrata Bhaumik, Anurag Kumar:
HeartSense: estimating blood pressure and ECG from photoplethysmograph using smart phones. SenSys 2013: 88:1-88:2
Coauthor Index
manage site settings
To protect your privacy, all features that rely on external API calls from your browser are turned off by default. You need to opt-in for them to become active. All settings here will be stored as cookies with your web browser. For more information see our F.A.Q.
Unpaywalled article links
Add open access links from to the list of external document links (if available).
Privacy notice: By enabling the option above, your browser will contact the API of unpaywall.org to load hyperlinks to open access articles. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Unpaywall privacy policy.
Archived links via Wayback Machine
For web page which are no longer available, try to retrieve content from the of the Internet Archive (if available).
Privacy notice: By enabling the option above, your browser will contact the API of archive.org to check for archived content of web pages that are no longer available. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Internet Archive privacy policy.
Reference lists
Add a list of references from , , and to record detail pages.
load references from crossref.org and opencitations.net
Privacy notice: By enabling the option above, your browser will contact the APIs of crossref.org, opencitations.net, and semanticscholar.org to load article reference information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Crossref privacy policy and the OpenCitations privacy policy, as well as the AI2 Privacy Policy covering Semantic Scholar.
Citation data
Add a list of citing articles from and to record detail pages.
load citations from opencitations.net
Privacy notice: By enabling the option above, your browser will contact the API of opencitations.net and semanticscholar.org to load citation information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the OpenCitations privacy policy as well as the AI2 Privacy Policy covering Semantic Scholar.
OpenAlex data
Load additional information about publications from .
Privacy notice: By enabling the option above, your browser will contact the API of openalex.org to load additional information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the information given by OpenAlex.
last updated on 2024-10-07 21:15 CEST by the dblp team
all metadata released as open data under CC0 1.0 license
see also: Terms of Use | Privacy Policy | Imprint